Thermo-reversibly crosslinked polymers (TRCPs) are quite attractive due to their self-healing capabilities and their reprocessability. In this thesis we explore this kind of materials using furan-grafted polyketones crosslinked with bismaleimide through the reversible Diels-Alder reaction. This polymer system was selected since it is remarkably easy and safe to work with. The research starts by studying intrinsic features of Diels-Alder-based TRCPs, such as the interplay of crosslinking density, network mobility, (de)crosslinking kinetics, and stereoisomerism (Chapter 2), and the side reactions that are likely to occur (Chapter 3). Then the focus is set on exploring these TRCPs as electroactive self-healing actuators by preparing them as co...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
In this work, we prepared electrically conductive self-healing nanocomposites. The material consists...
Thermo-reversibly crosslinked polymers (TRCPs) are quite attractive due to their self-healing capabi...
Thermo-reversibly crosslinked polymers (TRCPs) are quite attractive due to their self-healing capabi...
Multiwalled carbon nanotubes (MWCNT) and carbon black (CB) have been widely used as conductive fille...
Multiwalled carbon nanotubes (MWCNT) and carbon black (CB) have been widely used as conductive fille...
Multiwalled carbon nanotubes (MWCNT) and carbon black (CB) have been widely used as conductive fille...
Multiwalled carbon nanotubes (MWCNT) and carbon black (CB) have been widely used as conductive fille...
Multiwalled carbon nanotubes (MWCNT) and carbon black (CB) have been widely used as conductive fille...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
In this work, we prepared electrically conductive self-healing nanocomposites. The material consists...
Thermo-reversibly crosslinked polymers (TRCPs) are quite attractive due to their self-healing capabi...
Thermo-reversibly crosslinked polymers (TRCPs) are quite attractive due to their self-healing capabi...
Multiwalled carbon nanotubes (MWCNT) and carbon black (CB) have been widely used as conductive fille...
Multiwalled carbon nanotubes (MWCNT) and carbon black (CB) have been widely used as conductive fille...
Multiwalled carbon nanotubes (MWCNT) and carbon black (CB) have been widely used as conductive fille...
Multiwalled carbon nanotubes (MWCNT) and carbon black (CB) have been widely used as conductive fille...
Multiwalled carbon nanotubes (MWCNT) and carbon black (CB) have been widely used as conductive fille...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
In this work, we prepared electrically conductive self-healing nanocomposites. The material consists...